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首页> 外文期刊>The biochemical journal >Feedback control of ornithine decarboxylase expression by polyamines. Analysis of ornithine decarboxylase mRNA distribution in polysome profiles and of translation of this mRNA in vitro
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Feedback control of ornithine decarboxylase expression by polyamines. Analysis of ornithine decarboxylase mRNA distribution in polysome profiles and of translation of this mRNA in vitro

机译:多胺对鸟氨酸脱羧酶表达的反馈控制。鸟氨酸脱羧酶mRNA在多核糖体谱中的分布分析及其在体外的翻译

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摘要

pCell growth and differentiation require the presence of optimal concentrations of polyamines. Ornithine decarboxylase (ODC) catalyses the first and rate-controlling step in polyamine synthesis. In studies using cultures of Ehrlich ascites-tumour cells, we have shown that the expression of ODC is subject to feedback regulation by the polyamines. A decrease in the cellular polyamine concentration results in a compensatory increase in the synthesis of ODC, whereas an increase in polyamine concentration results in suppression of ODC synthesis. These changes in ODC synthesis were attributed to changes in the efficiency of ODC mRNA translation, because the steady-state amount of ODC mRNA remained constant. We now show that the number of ribosomes associated with ODC mRNA is low, and that the increase in ODC mRNA translation takes place without a shift in the distribution of ODC mRNA towards larger polysomes. This finding indicates that the polyamines regulate the efficiency of ODC mRNA translation by co-ordinately affecting the rates of initiation and elongation. By analysing ODC mRNA translation in vitro, using a rabbit reticulocyte lysate, polyadenylated RNA from a cell line with an amplified ODC gene, and a monospecific anti-ODC antibody, we also show that spermidine, but not putrescine, exerts a direct regulatory effect on ODC synthesis./p
机译:细胞生长和分化需要存在最佳浓度的多胺。鸟氨酸脱羧酶(ODC)催化多胺合成的第一步和速率控制步骤。在使用艾氏腹水肿瘤细胞培养物进行的研究中,我们表明ODC的表达受多胺的反馈调节。细胞多胺浓度的降低导致ODC合成的补偿性增加,而多胺浓度的增加导致ODC合成的抑制。 ODC合成的这些变化归因于ODC mRNA翻译效率的变化,因为ODC mRNA的稳态量保持恒定。我们现在显示,与ODC mRNA相关的核糖体数量很低,并且ODC mRNA翻译的增加没有发生,而ODC mRNA向较大的多核糖体的分布没有变化。该发现表明,多胺通过协调影响起始和延伸的速率来调节ODC mRNA翻译的效率。通过在体外分析ODC mRNA的翻译,使用兔网织红细胞裂解物,具有扩增的ODC基因的细胞系中的多腺苷酸化RNA和单特异性抗ODC抗体,我们还表明亚精胺而不是腐胺具有直接的调节作用ODC合成。

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